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首页> 外文期刊>IEEE systems journal >On the Joint Impact of Hardware and Channel Imperfections on Cognitive Spatial Modulation MIMO Systems: Cramer–Rao Bound Approach
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On the Joint Impact of Hardware and Channel Imperfections on Cognitive Spatial Modulation MIMO Systems: Cramer–Rao Bound Approach

机译:关于硬件和信道缺陷对认知空间调制MIMO系统的联合影响:Cramer-Rao界方法

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摘要

This paper investigates the performance of spatial modulation for multiple-input multiple-output underlay spectrum-sharing systems in the presence of three practical deleterious effects: 1) transceiver hardware impairments, 2) outdated channel state information (CSI), and 3) imperfect CSI. In particular, for Rayleigh fading channels, a closed-form expression of the average pairwise error probability and a tight upper bound of the average bit error rate (ABER) are derived. In addition, asymptotic and yet simple approximate expressions are obtained, and consequently insightful discussions are manifested on the impacts of channel and hardware imperfections and on the diversity order. Moreover, explicit exact and approximate expressions for the Cramer-Rao bound are computed for assessing the channel estimation accuracy. Numerical results, which are validated through simulations, show that nonzero bounds of the ABER occur in the high power domain because of the effects of channel and hardware impairments.
机译:本文研究了在存在三种实际有害影响的情况下多输入多输出参考频谱共享系统的空间调制性能:1)收发器硬件损伤,2)过时的信道状态信息(CSI)和3)CSI不完善。特别是,对于瑞利衰落信道,推导了平均成对误码率的闭式表达式和平均误码率(ABER)的严格上限。此外,获得了渐近且简单的近似表达式,因此,对信道和硬件缺陷的影响以及分集顺序进行了有见地的讨论。此外,计算用于Cramer-Rao界的显式精确表达式和近似表达式,以评估信道估计精度。通过仿真验证的数值结果表明,由于通道和硬件损伤的影响,ABER的非零范围出现在高功率域中。

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